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磷脂酸结合抑制 RGS1 活性,从而影响拟南芥中特定的信号通路。

Phosphatidic acid binding inhibits RGS1 activity to affect specific signaling pathways in Arabidopsis.

机构信息

Donald Danforth Plant Science Center, 975 N. Warson Road, St Louis, MO, 63132, USA.

出版信息

Plant J. 2017 May;90(3):466-477. doi: 10.1111/tpj.13503. Epub 2017 Mar 25.

Abstract

Modulation of the active versus inactive forms of the Gα protein is critical for the signaling processes mediated by the heterotrimeric G-protein complex. We have recently established that in Arabidopsis, the regulator of G-protein signaling (RGS1) protein and a lipid-hydrolyzing enzyme, phospholipase Dα1 (PLDα1), both act as GTPase-activity accelerating proteins (GAPs) for the Gα protein to attenuate its activity. RGS1 and PLDα1 interact with each other, and RGS1 inhibits the activity of PLDα1 during regulation of a subset of responses. In this study, we present evidence that this regulation is bidirectional. Phosphatidic acid (PA), a second messenger typically derived from the lipid-hydrolyzing activity of PLDα1, is a molecular target of RGS1. PA binds and inhibits the GAP activity of RGS1. A conserved lysine residue in RGS1 (Lys ) is directly involved in RGS1-PA binding. Introduction of this RGS1 protein variant in the rgs1 mutant background makes plants hypersensitive to a subset of abscisic acid-mediated responses. Our data point to the existence of negative feedback loops between these two regulatory proteins that precisely modulate the level of active Gα, consequently generating a highly controlled signal-response output.

摘要

G 蛋白偶联信号转导的关键是调节 G 蛋白α 亚基的激活态和失活态。我们最近发现,在拟南芥中,G 蛋白信号调节因子(RGS1)蛋白和一种脂质水解酶,磷脂酶 Dα1(PLDα1),都可以作为 G 蛋白的 GTP 酶活性加速蛋白(GAP)来降低其活性。RGS1 和 PLDα1 相互作用,并且在调节部分反应时,RGS1 抑制 PLDα1 的活性。在本研究中,我们提供了证据表明这种调节是双向的。二酰基甘油(PA),一种通常来源于 PLDα1 的脂质水解活性的第二信使,是 RGS1 的一个分子靶标。PA 结合并抑制 RGS1 的 GAP 活性。RGS1 中的一个保守赖氨酸残基(Lys )直接参与 RGS1-PA 结合。在 rgs1 突变体背景中引入这种 RGS1 蛋白变体,使植物对部分脱落酸介导的反应变得敏感。我们的数据表明,这两种调节蛋白之间存在负反馈回路,精确地调节活性 Gα 的水平,从而产生高度受控的信号-反应输出。

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